Ribas-Carbo Miquel, Still Chris, Berry Joe
Carnegie Institution of Washington, Department of Plant Biology, 260 Panama Street, Stanford, CA 94305, USA.
Rapid Commun Mass Spectrom. 2002;16(5):339-45. doi: 10.1002/rcm.582.
In this paper we present an automated system for simultaneous measurement of CO(2) concentration, delta(13)C and delta(18)O from small (<1 mL) air samples in a short period of time (approximately 1 hour). This system combines continuous-flow isotope ratio mass spectrometry (CF-IRMS) and gas chromatography (GC) with an inlet system similar to conventional dual-inlet methods permitting several measurement cycles of standard and sample air. Analogous to the dual-inlet method, the precision of this system increases with the number of replicate cycles measured. The standard error of the mean for a measurement with this system is 0.7 ppm for the CO(2) concentration and 0.05 per thousand for the delta(13)C and delta(18)O with four replicate cycles and 0.4 ppm and 0.03 per thousand respectively with nine replicate cycles. The mean offset of our measurements from NOAA/CMDL analyzed air samples was 0.08 ppm for the CO(2) concentration, 0.01 per thousand for delta(13)C and 0.00 per thousand for delta(18)O. A specific list of the parts and operation of the system is detailed as well as some of the applications for micrometeorological and ecophysiological applications.
在本文中,我们介绍了一种自动化系统,可在短时间内(约1小时)同时测量小体积(<1 mL)空气样本中的CO₂浓度、δ¹³C和δ¹⁸O。该系统将连续流同位素比率质谱法(CF - IRMS)和气相色谱法(GC)与类似于传统双进样方法的进样系统相结合,允许对标准空气和样本空气进行多个测量循环。与双进样方法类似,该系统的精度随着测量的重复循环次数增加而提高。使用该系统进行测量时,四个重复循环下CO₂浓度的平均标准误差为0.7 ppm,δ¹³C和δ¹⁸O为0.05‰;九个重复循环下分别为0.4 ppm和0.03‰。我们对美国国家海洋和大气管理局/气候监测与诊断实验室(NOAA/CMDL)分析的空气样本测量的平均偏差,CO₂浓度为0.08 ppm,δ¹³C为0.01‰,δ¹⁸O为0.00‰。详细列出了该系统的部件和操作清单以及一些在微气象学和生态生理学应用方面的情况。